4.6 Article

Nonlinear thermovoltage and thermocurrent in quantum dots

期刊

NEW JOURNAL OF PHYSICS
卷 15, 期 -, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1367-2630/15/10/105011

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资金

  1. ONR
  2. ONR Global
  3. Swedish Energy Agency [32920-1]
  4. Swedish Research Council (VR)
  5. Thai government
  6. NSF-IGERT
  7. Knut and Alice Wallenberg Foundation
  8. MINECO [FIS2011-23526]
  9. Latvian Council of Science [146/2012]
  10. National Basic Research Program of the Ministry of Science and Technology of China [2012CB932703, 2012CB932700]
  11. National Natural Science Foundation of China [91221202]
  12. Nanometer Structure Consortium at Lund University

向作者/读者索取更多资源

Quantum dots are model systems for quantum thermoelectric behavior because of their ability to control and measure the effects of electron-energy filtering and quantum confinement on thermoelectric properties. Interestingly, nonlinear thermoelectric properties of such small systems can modify the efficiency of thermoelectric power conversion. Using quantum dots embedded in semiconductor nanowires, we measure thermovoltage and thermocurrent that are strongly nonlinear in the applied thermal bias. We show that most of the observed nonlinear effects can be understood in terms of a renormalization of the quantum-dot energy levels as a function of applied thermal bias and provide a theoretical model of the nonlinear thermovoltage taking renormalization into account. Furthermore, we propose a theory that explains a possible source of the observed, pronounced renormalization effect by the melting of Kondo correlations in the mixed-valence regime. The ability to control nonlinear thermoelectric behavior expands the range in which quantum thermoelectric effects may be used for efficient energy conversion.

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